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Block channel equalization in the presence of a cochannel interferent signal

机译:在存在同信道干扰信号的情况下进行块信道均衡

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Novel algorithms for block equalization of M-ary phase shift keying (PSK) signals transmitted over multipath fading channels in the presence of an interferent cochannel signal are introduced and analyzed. The algorithms exploit the intrinsic statistical properties of cochannel interference (CCI) in order to mitigate its effects. Both linear and decision feedback equalizers (DFEs) are derived under the assumption that the overall channel impulse responses of both the useful and the inteferent signal are known. Simulation results show that: (a) whereas zero-forcing block equalizers yield a large noise enhancement effect, a minimum mean-square block DFE (MMSE-BDFE) can efficiently compensate for the distortion in the useful channel and reduce the effect of CCI at the same time, and (b) the MMSE-BDFEs outperform conventional DFEs, at least in the idealized conditions of our analysis.
机译:介绍并分析了在存在干扰同信道信号的情况下,通过多径衰落信道传输的M进制相移键控(PSK)信号的块均衡新算法。该算法利用了同信道干扰(CCI)的固有统计特性,以减轻其影响。线性和判决反馈均衡器(DFE)都是在假定有用信号和干扰信号的总信道脉冲响应均已知的前提下得出的。仿真结果表明:(a)零强制块均衡器产生较大的噪声增强效果,而最小均方块DFE(MMSE-BDFE)可以有效补偿有用通道中的失真并降低CCI在同时(b)至少在我们分析的理想条件下,MMSE-BDFE优于传统DFE。

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